Resultados totales (Incluyendo duplicados): 2
Encontrada(s) 1 página(s)
RODERIC. Repositorio Institucional de la Universitat de Valéncia
oai:roderic.uv.es:10550/81100
Imagen (Image). 2019

LIQUID PHASE EXFOLIATION OF CARBONATE-INTERCALATED LAYERED DOUBLE HYDROXIDES

  • Carrasco Andrés, José Alberto
  • Harvey, Andrew
  • Hanlon, Damien
  • McAteer, Dave
  • Sanchis Gual, Roger
  • Hirsch, Andreas
  • Hauke, Frank
  • Abellán Sáez, Gonzalo
  • Coleman, Jonathan N.
  • Coronado Miralles, Eugenio
Front cover, actividad de divulgación., Direct exfoliation of a carbonate layered double hydroxide (LDH) has been achieved by using a novel horn-probe sonic tip, avoiding the development of time-consuming anion-exchange reactions. The most suitable solvents were chosen based on the Hildebrand solubility parameters and the thickness of the exfoliated nanosheets confirmed unambiguously the successful delamination.

Proyecto: //
HANDLE: https://hdl.handle.net/10550/81100, https://roderic.uv.es/handle/10550/73865 Liquid phase exfoliation of carbonate-intercalated layered double hydroxides
RODERIC. Repositorio Institucional de la Universitat de Valéncia
oai:roderic.uv.es:10550/81100
Ver en: https://hdl.handle.net/10550/81100, https://roderic.uv.es/handle/10550/73865 Liquid phase exfoliation of carbonate-intercalated layered double hydroxides
RODERIC. Repositorio Institucional de la Universitat de Valéncia
oai:roderic.uv.es:10550/81100

RODERIC. Repositorio Institucional de la Universitat de Valéncia
oai:roderic.uv.es:10550/81104
Imagen (Image). 2020

COVER FEATURE: BOOSTING THE SUPERCAPACITIVE BEHAVIOR OF COAL LAYERED DOUBLE HYDROXIDES VIA TUNING THE METAL COMPOSITION AND INTERLAYER SPACE

  • Seijas-Da Silva, Alvaro
  • Sanchis Gual, Roger
  • Carrasco Andrés, José Alberto
  • Oestreicher, Víctor
  • Abellán Sáez, Gonzalo
  • Coronado Miralles, Eugenio
Portada de revista, actividad de difusión., The Cover Feature illustrates the improvement in the supercapacitive performance of CoAl layered double hydroxides (LDHs) after enlarging their interlayer space with anionic surfactants. This enhancement in the energy storage is ascribed to the increase in the electrochemical surface area (ECSA), the higher electrolyte diffusion, and the partial aluminum dissolution.

Proyecto: //

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